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Updated: Nov 19, 2025

Peptide-based Identification of Functional Motifs and their Binding Partners
Published on: June 30, 2013
Specific Inhibition of HIF Activity: Can Peptides Lead the Way?
Ilias Mylonis1, Georgia Chachami1, George Simos1,2
1Laboratory of Biochemistry, Faculty of Medicine, University of Thessaly, 41500 Larissa, Greece.
Abstract:
Reduced oxygen availability (hypoxia) is a characteristic of many disorders including cancer. Central components of the systemic and cellular response to hypoxia are the Hypoxia Inducible Factors (HIFs), a small family of heterodimeric transcription factors that directly or indirectly regulate the expression of hundreds of genes, the products of which mediate adaptive changes in processes that include metabolism, erythropoiesis, and angiogenesis. The overexpression of HIFs has been linked to the pathogenesis and progression of cancer. Moreover, evidence from cellular and animal models have convincingly shown that targeting HIFs represents a valid approach to treat hypoxia-related disorders. However, targeting transcription factors with small molecules is a very demanding task and development of HIF inhibitors with specificity and therapeutic potential has largely remained an unattainable challenge. Another promising approach to inhibit HIFs is to use peptides modelled after HIF subunit domains known to be involved in protein-protein interactions that are critical for HIF function. Introduction of these peptides into cells can inhibit, through competition, the activity of endogenous HIFs in a sequence and, therefore also isoform, specific manner. This review summarizes the involvement of HIFs in cancer and the approaches for targeting them, with a special focus on the development of peptide HIF inhibitors and their prospects as highly-specific pharmacological agents.
Insights
Hypoxia-Inducible Factors (HIFs) drive cancer progression. Peptide inhibitors offer a promising, highly specific approach to target HIFs, presenting new therapeutic avenues for hypoxia-related disorders.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Reduced oxygen availability (hypoxia) is prevalent in many diseases, notably cancer.
- Hypoxia-Inducible Factors (HIFs) are key regulators of cellular and systemic responses to hypoxia, controlling genes involved in metabolism, angiogenesis, and erythropoiesis.
- Overexpressed HIFs are implicated in cancer pathogenesis and progression.
Purpose of the Study:
- To review the role of HIFs in cancer.
- To explore therapeutic strategies targeting HIFs.
- To focus on the development and potential of peptide-based HIF inhibitors.
Main Methods:
- Literature review summarizing the involvement of HIFs in cancer.
- Analysis of small molecule inhibitor challenges.
- Focus on peptide inhibitors mimicking HIF subunit domains for protein-protein interaction disruption.
Main Results:
- Targeting HIFs is a validated strategy for hypoxia-related disorders.
- Small molecule inhibitors for transcription factors like HIFs face specificity and therapeutic challenges.
- Peptide inhibitors can competitively inhibit endogenous HIFs in a sequence- and isoform-specific manner.
Conclusions:
- Peptide inhibitors represent a promising approach for developing highly specific pharmacological agents against HIFs.
- Targeting HIFs with peptides offers a potential therapeutic strategy for cancer and other hypoxia-related conditions.
- Further development of peptide HIF inhibitors holds significant prospects for clinical application.
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